entry64.S 29.9 KB
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/*
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 *  arch/s390/kernel/entry64.S
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 *    S390 low-level entry points.
 *
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 *    Copyright (C) IBM Corp. 1999,2006
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 *    Author(s): Martin Schwidefsky (schwidefsky@de.ibm.com),
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 *		 Hartmut Penner (hp@de.ibm.com),
 *		 Denis Joseph Barrow (djbarrow@de.ibm.com,barrow_dj@yahoo.com),
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 *		 Heiko Carstens <heiko.carstens@de.ibm.com>
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 */

#include <linux/sys.h>
#include <linux/linkage.h>
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#include <linux/init.h>
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#include <asm/cache.h>
#include <asm/lowcore.h>
#include <asm/errno.h>
#include <asm/ptrace.h>
#include <asm/thread_info.h>
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#include <asm/asm-offsets.h>
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#include <asm/unistd.h>
#include <asm/page.h>

/*
 * Stack layout for the system_call stack entry.
 * The first few entries are identical to the user_regs_struct.
 */
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SP_PTREGS    =	STACK_FRAME_OVERHEAD
SP_ARGS      =	STACK_FRAME_OVERHEAD + __PT_ARGS
SP_PSW	     =	STACK_FRAME_OVERHEAD + __PT_PSW
SP_R0	     =	STACK_FRAME_OVERHEAD + __PT_GPRS
SP_R1	     =	STACK_FRAME_OVERHEAD + __PT_GPRS + 8
SP_R2	     =	STACK_FRAME_OVERHEAD + __PT_GPRS + 16
SP_R3	     =	STACK_FRAME_OVERHEAD + __PT_GPRS + 24
SP_R4	     =	STACK_FRAME_OVERHEAD + __PT_GPRS + 32
SP_R5	     =	STACK_FRAME_OVERHEAD + __PT_GPRS + 40
SP_R6	     =	STACK_FRAME_OVERHEAD + __PT_GPRS + 48
SP_R7	     =	STACK_FRAME_OVERHEAD + __PT_GPRS + 56
SP_R8	     =	STACK_FRAME_OVERHEAD + __PT_GPRS + 64
SP_R9	     =	STACK_FRAME_OVERHEAD + __PT_GPRS + 72
SP_R10	     =	STACK_FRAME_OVERHEAD + __PT_GPRS + 80
SP_R11	     =	STACK_FRAME_OVERHEAD + __PT_GPRS + 88
SP_R12	     =	STACK_FRAME_OVERHEAD + __PT_GPRS + 96
SP_R13	     =	STACK_FRAME_OVERHEAD + __PT_GPRS + 104
SP_R14	     =	STACK_FRAME_OVERHEAD + __PT_GPRS + 112
SP_R15	     =	STACK_FRAME_OVERHEAD + __PT_GPRS + 120
SP_ORIG_R2   =	STACK_FRAME_OVERHEAD + __PT_ORIG_GPR2
SP_ILC	     =	STACK_FRAME_OVERHEAD + __PT_ILC
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SP_SVCNR      =	STACK_FRAME_OVERHEAD + __PT_SVCNR
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SP_SIZE      =	STACK_FRAME_OVERHEAD + __PT_SIZE
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STACK_SHIFT = PAGE_SHIFT + THREAD_ORDER
STACK_SIZE  = 1 << STACK_SHIFT

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_TIF_WORK_SVC = (_TIF_SIGPENDING | _TIF_NOTIFY_RESUME | _TIF_NEED_RESCHED | \
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		 _TIF_MCCK_PENDING | _TIF_RESTART_SVC | _TIF_SINGLE_STEP )
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_TIF_WORK_INT = (_TIF_SIGPENDING | _TIF_NOTIFY_RESUME | _TIF_NEED_RESCHED | \
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		 _TIF_MCCK_PENDING)
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#define BASED(name) name-system_call(%r13)

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#ifdef CONFIG_TRACE_IRQFLAGS
	.macro	TRACE_IRQS_ON
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	 basr	%r2,%r0
	 brasl	%r14,trace_hardirqs_on_caller
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	.endm

	.macro	TRACE_IRQS_OFF
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	 basr	%r2,%r0
	 brasl	%r14,trace_hardirqs_off_caller
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	.endm
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	.macro TRACE_IRQS_CHECK
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	basr	%r2,%r0
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	tm	SP_PSW(%r15),0x03	# irqs enabled?
	jz	0f
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	brasl	%r14,trace_hardirqs_on_caller
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	j	1f
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0:	brasl	%r14,trace_hardirqs_off_caller
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1:
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	.endm
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#else
#define TRACE_IRQS_ON
#define TRACE_IRQS_OFF
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#define TRACE_IRQS_CHECK
#endif

#ifdef CONFIG_LOCKDEP
	.macro	LOCKDEP_SYS_EXIT
	tm	SP_PSW+1(%r15),0x01	# returning to user ?
	jz	0f
	brasl	%r14,lockdep_sys_exit
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	.endm
#else
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#define LOCKDEP_SYS_EXIT
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#endif

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	.macro	UPDATE_VTIME lc_from,lc_to,lc_sum
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	lg	%r10,\lc_from
	slg	%r10,\lc_to
	alg	%r10,\lc_sum
	stg	%r10,\lc_sum
	.endm

/*
 * Register usage in interrupt handlers:
 *    R9  - pointer to current task structure
 *    R13 - pointer to literal pool
 *    R14 - return register for function calls
 *    R15 - kernel stack pointer
 */

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	.macro	SAVE_ALL_BASE savearea
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	stmg	%r12,%r15,\savearea
	larl	%r13,system_call
	.endm

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	.macro	SAVE_ALL_SVC psworg,savearea
	la	%r12,\psworg
	lg	%r15,__LC_KERNEL_STACK	# problem state -> load ksp
	.endm

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	.macro	SAVE_ALL_SYNC psworg,savearea
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	la	%r12,\psworg
	tm	\psworg+1,0x01		# test problem state bit
	jz	2f			# skip stack setup save
	lg	%r15,__LC_KERNEL_STACK	# problem state -> load ksp
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#ifdef CONFIG_CHECK_STACK
	j	3f
2:	tml	%r15,STACK_SIZE - CONFIG_STACK_GUARD
	jz	stack_overflow
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#endif
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	.endm

	.macro	SAVE_ALL_ASYNC psworg,savearea
	la	%r12,\psworg
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	tm	\psworg+1,0x01		# test problem state bit
	jnz	1f			# from user -> load kernel stack
	clc	\psworg+8(8),BASED(.Lcritical_end)
	jhe	0f
	clc	\psworg+8(8),BASED(.Lcritical_start)
	jl	0f
	brasl	%r14,cleanup_critical
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	tm	1(%r12),0x01		# retest problem state after cleanup
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	jnz	1f
0:	lg	%r14,__LC_ASYNC_STACK	# are we already on the async. stack ?
	slgr	%r14,%r15
	srag	%r14,%r14,STACK_SHIFT
	jz	2f
1:	lg	%r15,__LC_ASYNC_STACK	# load async stack
#ifdef CONFIG_CHECK_STACK
	j	3f
2:	tml	%r15,STACK_SIZE - CONFIG_STACK_GUARD
	jz	stack_overflow
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#endif
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2:
	.endm

	.macro	CREATE_STACK_FRAME psworg,savearea
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	aghi	%r15,-SP_SIZE		# make room for registers & psw
	mvc	SP_PSW(16,%r15),0(%r12)	# move user PSW to stack
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	stg	%r2,SP_ORIG_R2(%r15)	# store original content of gpr 2
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	icm	%r12,3,__LC_SVC_ILC
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	stmg	%r0,%r11,SP_R0(%r15)	# store gprs %r0-%r11 to kernel stack
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	st	%r12,SP_SVCNR(%r15)
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	mvc	SP_R12(32,%r15),\savearea # move %r12-%r15 to stack
	la	%r12,0
	stg	%r12,__SF_BACKCHAIN(%r15)
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	.endm
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	.macro	RESTORE_ALL psworg,sync
	mvc	\psworg(16),SP_PSW(%r15) # move user PSW to lowcore
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	.if !\sync
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	ni	\psworg+1,0xfd		# clear wait state bit
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	.endif
	lmg	%r0,%r15,SP_R0(%r15)	# load gprs 0-15 of user
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	stpt	__LC_EXIT_TIMER
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	lpswe	\psworg			# back to caller
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	.endm

/*
 * Scheduler resume function, called by switch_to
 *  gpr2 = (task_struct *) prev
 *  gpr3 = (task_struct *) next
 * Returns:
 *  gpr2 = prev
 */
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	.globl	__switch_to
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__switch_to:
	tm	__THREAD_per+4(%r3),0xe8 # is the new process using per ?
	jz	__switch_to_noper		# if not we're fine
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	stctg	%c9,%c11,__SF_EMPTY(%r15)# We are using per stuff
	clc	__THREAD_per(24,%r3),__SF_EMPTY(%r15)
	je	__switch_to_noper	     # we got away without bashing TLB's
	lctlg	%c9,%c11,__THREAD_per(%r3)	# Nope we didn't
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__switch_to_noper:
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	lg	%r4,__THREAD_info(%r2)		    # get thread_info of prev
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	tm	__TI_flags+7(%r4),_TIF_MCCK_PENDING # machine check pending?
	jz	__switch_to_no_mcck
	ni	__TI_flags+7(%r4),255-_TIF_MCCK_PENDING # clear flag in prev
	lg	%r4,__THREAD_info(%r3)		    # get thread_info of next
	oi	__TI_flags+7(%r4),_TIF_MCCK_PENDING # set it in next
__switch_to_no_mcck:
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	stmg	%r6,%r15,__SF_GPRS(%r15)# store __switch_to registers of prev task
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	stg	%r15,__THREAD_ksp(%r2)	# store kernel stack to prev->tss.ksp
	lg	%r15,__THREAD_ksp(%r3)	# load kernel stack from next->tss.ksp
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	lmg	%r6,%r15,__SF_GPRS(%r15)# load __switch_to registers of next task
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	stg	%r3,__LC_CURRENT	# __LC_CURRENT = current task struct
	lctl	%c4,%c4,__TASK_pid(%r3) # load pid to control reg. 4
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	lg	%r3,__THREAD_info(%r3)	# load thread_info from task struct
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	stg	%r3,__LC_THREAD_INFO
	aghi	%r3,STACK_SIZE
	stg	%r3,__LC_KERNEL_STACK	# __LC_KERNEL_STACK = new kernel stack
	br	%r14

__critical_start:
/*
 * SVC interrupt handler routine. System calls are synchronous events and
 * are executed with interrupts enabled.
 */

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	.globl	system_call
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system_call:
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	stpt	__LC_SYNC_ENTER_TIMER
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sysc_saveall:
	SAVE_ALL_BASE __LC_SAVE_AREA
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	SAVE_ALL_SVC __LC_SVC_OLD_PSW,__LC_SAVE_AREA
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	CREATE_STACK_FRAME __LC_SVC_OLD_PSW,__LC_SAVE_AREA
	llgh	%r7,__LC_SVC_INT_CODE	# get svc number from lowcore
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sysc_vtime:
	UPDATE_VTIME __LC_EXIT_TIMER,__LC_SYNC_ENTER_TIMER,__LC_USER_TIMER
sysc_stime:
	UPDATE_VTIME __LC_LAST_UPDATE_TIMER,__LC_EXIT_TIMER,__LC_SYSTEM_TIMER
sysc_update:
	mvc	__LC_LAST_UPDATE_TIMER(8),__LC_SYNC_ENTER_TIMER
sysc_do_svc:
	lg	%r9,__LC_THREAD_INFO	# load pointer to thread_info struct
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	ltgr	%r7,%r7		# test for svc 0
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	jnz	sysc_nr_ok
	# svc 0: system call number in %r1
	cl	%r1,BASED(.Lnr_syscalls)
	jnl	sysc_nr_ok
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	lgfr	%r7,%r1 	# clear high word in r1
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sysc_nr_ok:
	mvc	SP_ARGS(8,%r15),SP_R7(%r15)
sysc_do_restart:
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	sth	%r7,SP_SVCNR(%r15)
	sllg	%r7,%r7,2	# svc number * 4
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	larl	%r10,sys_call_table
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#ifdef CONFIG_COMPAT
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	tm	__TI_flags+5(%r9),(_TIF_31BIT>>16)  # running in 31 bit mode ?
	jno	sysc_noemu
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	larl	%r10,sys_call_table_emu  # use 31 bit emulation system calls
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sysc_noemu:
#endif
	tm	__TI_flags+7(%r9),(_TIF_SYSCALL_TRACE|_TIF_SYSCALL_AUDIT)
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	lgf	%r8,0(%r7,%r10) # load address of system call routine
	jnz	sysc_tracesys
	basr	%r14,%r8	# call sys_xxxx
	stg	%r2,SP_R2(%r15) # store return value (change R2 on stack)
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sysc_return:
	tm	__TI_flags+7(%r9),_TIF_WORK_SVC
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	jnz	sysc_work	# there is work to do (signals etc.)
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sysc_restore:
#ifdef CONFIG_TRACE_IRQFLAGS
	larl	%r1,sysc_restore_trace_psw
	lpswe	0(%r1)
sysc_restore_trace:
	TRACE_IRQS_CHECK
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	LOCKDEP_SYS_EXIT
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#endif
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sysc_leave:
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	RESTORE_ALL __LC_RETURN_PSW,1
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sysc_done:

#ifdef CONFIG_TRACE_IRQFLAGS
	.align	8
	.globl sysc_restore_trace_psw
sysc_restore_trace_psw:
	.quad	0, sysc_restore_trace
#endif
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#
# recheck if there is more work to do
#
sysc_work_loop:
	tm	__TI_flags+7(%r9),_TIF_WORK_SVC
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	jz	sysc_restore	  # there is no work to do
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#
# One of the work bits is on. Find out which one.
#
sysc_work:
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	tm	SP_PSW+1(%r15),0x01	# returning to user ?
	jno	sysc_restore
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	tm	__TI_flags+7(%r9),_TIF_MCCK_PENDING
	jo	sysc_mcck_pending
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	tm	__TI_flags+7(%r9),_TIF_NEED_RESCHED
	jo	sysc_reschedule
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	tm	__TI_flags+7(%r9),_TIF_SIGPENDING
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	jnz	sysc_sigpending
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	tm	__TI_flags+7(%r9),_TIF_NOTIFY_RESUME
	jnz	sysc_notify_resume
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	tm	__TI_flags+7(%r9),_TIF_RESTART_SVC
	jo	sysc_restart
	tm	__TI_flags+7(%r9),_TIF_SINGLE_STEP
	jo	sysc_singlestep
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	j	sysc_restore
sysc_work_done:
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#
# _TIF_NEED_RESCHED is set, call schedule
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#
sysc_reschedule:
	larl	%r14,sysc_work_loop
	jg	schedule	# return point is sysc_return
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#
# _TIF_MCCK_PENDING is set, call handler
#
sysc_mcck_pending:
	larl	%r14,sysc_work_loop
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	jg	s390_handle_mcck	# TIF bit will be cleared by handler
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#
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# _TIF_SIGPENDING is set, call do_signal
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#
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sysc_sigpending:
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	ni	__TI_flags+7(%r9),255-_TIF_SINGLE_STEP # clear TIF_SINGLE_STEP
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	la	%r2,SP_PTREGS(%r15)	# load pt_regs
	brasl	%r14,do_signal		# call do_signal
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	tm	__TI_flags+7(%r9),_TIF_RESTART_SVC
	jo	sysc_restart
	tm	__TI_flags+7(%r9),_TIF_SINGLE_STEP
	jo	sysc_singlestep
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	j	sysc_work_loop
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#
# _TIF_NOTIFY_RESUME is set, call do_notify_resume
#
sysc_notify_resume:
	la	%r2,SP_PTREGS(%r15)	# load pt_regs
	larl	%r14,sysc_work_loop
	jg	do_notify_resume	# call do_notify_resume

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#
# _TIF_RESTART_SVC is set, set up registers and restart svc
#
sysc_restart:
	ni	__TI_flags+7(%r9),255-_TIF_RESTART_SVC # clear TIF_RESTART_SVC
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	lg	%r7,SP_R2(%r15)		# load new svc number
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	mvc	SP_R2(8,%r15),SP_ORIG_R2(%r15) # restore first argument
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	lmg	%r2,%r6,SP_R2(%r15)	# load svc arguments
	j	sysc_do_restart 	# restart svc
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#
# _TIF_SINGLE_STEP is set, call do_single_step
#
sysc_singlestep:
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	ni	__TI_flags+7(%r9),255-_TIF_SINGLE_STEP	# clear TIF_SINGLE_STEP
	xc	SP_SVCNR(2,%r15),SP_SVCNR(%r15)		# clear svc number
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	la	%r2,SP_PTREGS(%r15)	# address of register-save area
	larl	%r14,sysc_return	# load adr. of system return
	jg	do_single_step		# branch to do_sigtrap

#
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# call tracehook_report_syscall_entry/tracehook_report_syscall_exit before
# and after the system call
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#
sysc_tracesys:
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	la	%r2,SP_PTREGS(%r15)	# load pt_regs
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	la	%r3,0
	srl	%r7,2
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	stg	%r7,SP_R2(%r15)
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	brasl	%r14,do_syscall_trace_enter
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	lghi	%r0,NR_syscalls
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	clgr	%r0,%r2
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	jnh	sysc_tracenogo
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	sllg	%r7,%r2,2		# svc number *4
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	lgf	%r8,0(%r7,%r10)
sysc_tracego:
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	lmg	%r3,%r6,SP_R3(%r15)
	lg	%r2,SP_ORIG_R2(%r15)
	basr	%r14,%r8		# call sys_xxx
	stg	%r2,SP_R2(%r15)		# store return value
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sysc_tracenogo:
	tm	__TI_flags+7(%r9),(_TIF_SYSCALL_TRACE|_TIF_SYSCALL_AUDIT)
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	jz	sysc_return
	la	%r2,SP_PTREGS(%r15)	# load pt_regs
	larl	%r14,sysc_return	# return point is sysc_return
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	jg	do_syscall_trace_exit
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#
# a new process exits the kernel with ret_from_fork
#
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	.globl	ret_from_fork
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ret_from_fork:
	lg	%r13,__LC_SVC_NEW_PSW+8
	lg	%r9,__LC_THREAD_INFO	# load pointer to thread_info struct
	tm	SP_PSW+1(%r15),0x01	# forking a kernel thread ?
	jo	0f
	stg	%r15,SP_R15(%r15)	# store stack pointer for new kthread
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0:	brasl	%r14,schedule_tail
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	TRACE_IRQS_ON
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	stosm	24(%r15),0x03		# reenable interrupts
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	j	sysc_tracenogo
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#
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# kernel_execve function needs to deal with pt_regs that is not
# at the usual place
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#
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	.globl	kernel_execve
kernel_execve:
	stmg	%r12,%r15,96(%r15)
	lgr	%r14,%r15
	aghi	%r15,-SP_SIZE
	stg	%r14,__SF_BACKCHAIN(%r15)
	la	%r12,SP_PTREGS(%r15)
	xc	0(__PT_SIZE,%r12),0(%r12)
	lgr	%r5,%r12
	brasl	%r14,do_execve
	ltgfr	%r2,%r2
	je	0f
	aghi	%r15,SP_SIZE
	lmg	%r12,%r15,96(%r15)
	br	%r14
	# execve succeeded.
0:	stnsm	__SF_EMPTY(%r15),0xfc	# disable interrupts
	lg	%r15,__LC_KERNEL_STACK	# load ksp
	aghi	%r15,-SP_SIZE		# make room for registers & psw
	lg	%r13,__LC_SVC_NEW_PSW+8
	lg	%r9,__LC_THREAD_INFO
	mvc	SP_PTREGS(__PT_SIZE,%r15),0(%r12)	# copy pt_regs
	xc	__SF_BACKCHAIN(8,%r15),__SF_BACKCHAIN(%r15)
	stosm	__SF_EMPTY(%r15),0x03	# reenable interrupts
	brasl	%r14,execve_tail
	j	sysc_return
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/*
 * Program check handler routine
 */

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	.globl	pgm_check_handler
L
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pgm_check_handler:
/*
 * First we need to check for a special case:
 * Single stepping an instruction that disables the PER event mask will
 * cause a PER event AFTER the mask has been set. Example: SVC or LPSW.
 * For a single stepped SVC the program check handler gets control after
 * the SVC new PSW has been loaded. But we want to execute the SVC first and
 * then handle the PER event. Therefore we update the SVC old PSW to point
 * to the pgm_check_handler and branch to the SVC handler after we checked
 * if we have to load the kernel stack register.
 * For every other possible cause for PER event without the PER mask set
 * we just ignore the PER event (FIXME: is there anything we have to do
 * for LPSW?).
 */
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	stpt	__LC_SYNC_ENTER_TIMER
L
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	SAVE_ALL_BASE __LC_SAVE_AREA
H
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	tm	__LC_PGM_INT_CODE+1,0x80 # check whether we got a per exception
	jnz	pgm_per 		 # got per exception -> special case
466
	SAVE_ALL_SYNC __LC_PGM_OLD_PSW,__LC_SAVE_AREA
467
	CREATE_STACK_FRAME __LC_PGM_OLD_PSW,__LC_SAVE_AREA
L
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	tm	SP_PSW+1(%r15),0x01	# interrupting from user ?
	jz	pgm_no_vtime
	UPDATE_VTIME __LC_EXIT_TIMER,__LC_SYNC_ENTER_TIMER,__LC_USER_TIMER
	UPDATE_VTIME __LC_LAST_UPDATE_TIMER,__LC_EXIT_TIMER,__LC_SYSTEM_TIMER
	mvc	__LC_LAST_UPDATE_TIMER(8),__LC_SYNC_ENTER_TIMER
pgm_no_vtime:
	lg	%r9,__LC_THREAD_INFO	# load pointer to thread_info struct
475
	mvc	SP_ARGS(8,%r15),__LC_LAST_BREAK
476
	TRACE_IRQS_OFF
H
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	lgf	%r3,__LC_PGM_ILC	# load program interruption code
L
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	lghi	%r8,0x7f
	ngr	%r8,%r3
pgm_do_call:
H
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	sll	%r8,3
	larl	%r1,pgm_check_table
	lg	%r1,0(%r8,%r1)		# load address of handler routine
	la	%r2,SP_PTREGS(%r15)	# address of register-save area
L
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	larl	%r14,sysc_return
H
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486
	br	%r1			# branch to interrupt-handler
L
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487 488 489 490 491

#
# handle per exception
#
pgm_per:
H
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492 493
	tm	__LC_PGM_OLD_PSW,0x40	# test if per event recording is on
	jnz	pgm_per_std		# ok, normal per event from user space
L
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# ok its one of the special cases, now we need to find out which one
H
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	clc	__LC_PGM_OLD_PSW(16),__LC_SVC_NEW_PSW
	je	pgm_svcper
L
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# no interesting special case, ignore PER event
	lmg	%r12,%r15,__LC_SAVE_AREA
H
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	lpswe	__LC_PGM_OLD_PSW
L
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#
# Normal per exception
#
pgm_per_std:
505
	SAVE_ALL_SYNC __LC_PGM_OLD_PSW,__LC_SAVE_AREA
506
	CREATE_STACK_FRAME __LC_PGM_OLD_PSW,__LC_SAVE_AREA
L
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	tm	SP_PSW+1(%r15),0x01	# interrupting from user ?
	jz	pgm_no_vtime2
	UPDATE_VTIME __LC_EXIT_TIMER,__LC_SYNC_ENTER_TIMER,__LC_USER_TIMER
	UPDATE_VTIME __LC_LAST_UPDATE_TIMER,__LC_EXIT_TIMER,__LC_SYSTEM_TIMER
	mvc	__LC_LAST_UPDATE_TIMER(8),__LC_SYNC_ENTER_TIMER
pgm_no_vtime2:
	lg	%r9,__LC_THREAD_INFO	# load pointer to thread_info struct
514
	TRACE_IRQS_OFF
L
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515
	lg	%r1,__TI_task(%r9)
M
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516 517
	tm	SP_PSW+1(%r15),0x01	# kernel per event ?
	jz	kernel_per
L
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	mvc	__THREAD_per+__PER_atmid(2,%r1),__LC_PER_ATMID
	mvc	__THREAD_per+__PER_address(8,%r1),__LC_PER_ADDRESS
	mvc	__THREAD_per+__PER_access_id(1,%r1),__LC_PER_ACCESS_ID
	oi	__TI_flags+7(%r9),_TIF_SINGLE_STEP # set TIF_SINGLE_STEP
H
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522
	lgf	%r3,__LC_PGM_ILC	# load program interruption code
L
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523
	lghi	%r8,0x7f
H
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524
	ngr	%r8,%r3			# clear per-event-bit and ilc
L
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	je	sysc_return
	j	pgm_do_call

#
# it was a single stepped SVC that is causing all the trouble
#
pgm_svcper:
532
	SAVE_ALL_SYNC __LC_SVC_OLD_PSW,__LC_SAVE_AREA
533
	CREATE_STACK_FRAME __LC_SVC_OLD_PSW,__LC_SAVE_AREA
L
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	UPDATE_VTIME __LC_EXIT_TIMER,__LC_SYNC_ENTER_TIMER,__LC_USER_TIMER
	UPDATE_VTIME __LC_LAST_UPDATE_TIMER,__LC_EXIT_TIMER,__LC_SYSTEM_TIMER
	mvc	__LC_LAST_UPDATE_TIMER(8),__LC_SYNC_ENTER_TIMER
H
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	llgh	%r7,__LC_SVC_INT_CODE	# get svc number from lowcore
L
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	lg	%r9,__LC_THREAD_INFO	# load pointer to thread_info struct
	lg	%r1,__TI_task(%r9)
	mvc	__THREAD_per+__PER_atmid(2,%r1),__LC_PER_ATMID
	mvc	__THREAD_per+__PER_address(8,%r1),__LC_PER_ADDRESS
	mvc	__THREAD_per+__PER_access_id(1,%r1),__LC_PER_ACCESS_ID
	oi	__TI_flags+7(%r9),_TIF_SINGLE_STEP # set TIF_SINGLE_STEP
544
	TRACE_IRQS_ON
L
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	stosm	__SF_EMPTY(%r15),0x03	# reenable interrupts
	j	sysc_do_svc

M
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#
# per was called from kernel, must be kprobes
#
kernel_per:
552
	xc	SP_SVCNR(2,%r15),SP_SVCNR(%r15)	# clear svc number
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553
	la	%r2,SP_PTREGS(%r15)	# address of register-save area
554
	larl	%r14,sysc_restore	# load adr. of system ret, no work
M
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	jg	do_single_step		# branch to do_single_step

L
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/*
 * IO interrupt handler routine
 */
H
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560
	.globl io_int_handler
L
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io_int_handler:
	stck	__LC_INT_CLOCK
563
	stpt	__LC_ASYNC_ENTER_TIMER
L
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	SAVE_ALL_BASE __LC_SAVE_AREA+32
565
	SAVE_ALL_ASYNC __LC_IO_OLD_PSW,__LC_SAVE_AREA+32
566
	CREATE_STACK_FRAME __LC_IO_OLD_PSW,__LC_SAVE_AREA+32
L
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	tm	SP_PSW+1(%r15),0x01	# interrupting from user ?
	jz	io_no_vtime
	UPDATE_VTIME __LC_EXIT_TIMER,__LC_ASYNC_ENTER_TIMER,__LC_USER_TIMER
	UPDATE_VTIME __LC_LAST_UPDATE_TIMER,__LC_EXIT_TIMER,__LC_SYSTEM_TIMER
	mvc	__LC_LAST_UPDATE_TIMER(8),__LC_ASYNC_ENTER_TIMER
io_no_vtime:
	lg	%r9,__LC_THREAD_INFO	# load pointer to thread_info struct
574
	TRACE_IRQS_OFF
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	la	%r2,SP_PTREGS(%r15)	# address of register-save area
	brasl	%r14,do_IRQ		# call standard irq handler
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io_return:
	tm	__TI_flags+7(%r9),_TIF_WORK_INT
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	jnz	io_work 		# there is work to do (signals etc.)
580 581 582 583 584 585
io_restore:
#ifdef CONFIG_TRACE_IRQFLAGS
	larl	%r1,io_restore_trace_psw
	lpswe	0(%r1)
io_restore_trace:
	TRACE_IRQS_CHECK
586
	LOCKDEP_SYS_EXIT
587
#endif
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io_leave:
H
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	RESTORE_ALL __LC_RETURN_PSW,0
590
io_done:
L
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592 593 594 595 596 597 598
#ifdef CONFIG_TRACE_IRQFLAGS
	.align	8
	.globl io_restore_trace_psw
io_restore_trace_psw:
	.quad	0, io_restore_trace
#endif

599
#
600 601
# There is work todo, we need to check if we return to userspace, then
# check, if we are in SIE, if yes leave it
602 603 604 605
#
io_work:
	tm	SP_PSW+1(%r15),0x01	# returning to user ?
#ifndef CONFIG_PREEMPT
606 607 608 609 610 611 612 613 614 615 616
#if defined(CONFIG_KVM) || defined(CONFIG_KVM_MODULE)
	jnz	io_work_user		# yes -> no need to check for SIE
	la	%r1, BASED(sie_opcode)	# we return to kernel here
	lg	%r2, SP_PSW+8(%r15)
	clc	0(2,%r1), 0(%r2)	# is current instruction = SIE?
	jne	io_restore		# no-> return to kernel
	lg	%r1, SP_PSW+8(%r15)	# yes-> add 4 bytes to leave SIE
	aghi	%r1, 4
	stg	%r1, SP_PSW+8(%r15)
	j	io_restore		# return to kernel
#else
617
	jno	io_restore		# no-> skip resched & signal
618
#endif
619 620
#else
	jnz	io_work_user		# yes -> do resched & signal
621 622 623 624 625 626 627 628 629 630
#if defined(CONFIG_KVM) || defined(CONFIG_KVM_MODULE)
	la	%r1, BASED(sie_opcode)
	lg	%r2, SP_PSW+8(%r15)
	clc	0(2,%r1), 0(%r2)	# is current instruction = SIE?
	jne	0f			# no -> leave PSW alone
	lg	%r1, SP_PSW+8(%r15)	# yes-> add 4 bytes to leave SIE
	aghi	%r1, 4
	stg	%r1, SP_PSW+8(%r15)
0:
#endif
631
	# check for preemptive scheduling
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	icm	%r0,15,__TI_precount(%r9)
633
	jnz	io_restore		# preemption is disabled
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	# switch to kernel stack
	lg	%r1,SP_R15(%r15)
	aghi	%r1,-SP_SIZE
	mvc	SP_PTREGS(__PT_SIZE,%r1),SP_PTREGS(%r15)
H
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	xc	__SF_BACKCHAIN(8,%r1),__SF_BACKCHAIN(%r1) # clear back chain
L
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	lgr	%r15,%r1
io_resume_loop:
	tm	__TI_flags+7(%r9),_TIF_NEED_RESCHED
642
	jno	io_restore
H
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	larl	%r14,io_resume_loop
	jg	preempt_schedule_irq
L
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#endif

647
io_work_user:
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	lg	%r1,__LC_KERNEL_STACK
	aghi	%r1,-SP_SIZE
	mvc	SP_PTREGS(__PT_SIZE,%r1),SP_PTREGS(%r15)
H
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	xc	__SF_BACKCHAIN(8,%r1),__SF_BACKCHAIN(%r1) # clear back chain
L
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	lgr	%r15,%r1
#
# One of the work bits is on. Find out which one.
655 656
# Checked are: _TIF_SIGPENDING, _TIF_RESTORE_SIGPENDING, _TIF_NEED_RESCHED
#	       and _TIF_MCCK_PENDING
L
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#
io_work_loop:
659 660
	tm	__TI_flags+7(%r9),_TIF_MCCK_PENDING
	jo	io_mcck_pending
L
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	tm	__TI_flags+7(%r9),_TIF_NEED_RESCHED
	jo	io_reschedule
663
	tm	__TI_flags+7(%r9),_TIF_SIGPENDING
664
	jnz	io_sigpending
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	tm	__TI_flags+7(%r9),_TIF_NOTIFY_RESUME
	jnz	io_notify_resume
667 668
	j	io_restore
io_work_done:
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670 671 672 673 674
#if defined(CONFIG_KVM) || defined(CONFIG_KVM_MODULE)
sie_opcode:
	.long 0xb2140000
#endif

675 676 677 678
#
# _TIF_MCCK_PENDING is set, call handler
#
io_mcck_pending:
H
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	brasl	%r14,s390_handle_mcck	# TIF bit will be cleared by handler
	j	io_work_loop
681

L
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#
# _TIF_NEED_RESCHED is set, call schedule
H
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#
io_reschedule:
686
	TRACE_IRQS_ON
H
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	stosm	__SF_EMPTY(%r15),0x03	# reenable interrupts
	brasl	%r14,schedule		# call scheduler
	stnsm	__SF_EMPTY(%r15),0xfc	# disable I/O and ext. interrupts
690
	TRACE_IRQS_OFF
L
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691
	tm	__TI_flags+7(%r9),_TIF_WORK_INT
692
	jz	io_restore		# there is no work to do
L
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	j	io_work_loop

#
696
# _TIF_SIGPENDING or is set, call do_signal
L
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697
#
H
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698
io_sigpending:
699
	TRACE_IRQS_ON
H
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	stosm	__SF_EMPTY(%r15),0x03	# reenable interrupts
	la	%r2,SP_PTREGS(%r15)	# load pt_regs
L
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702
	brasl	%r14,do_signal		# call do_signal
H
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703
	stnsm	__SF_EMPTY(%r15),0xfc	# disable I/O and ext. interrupts
704
	TRACE_IRQS_OFF
H
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705
	j	io_work_loop
L
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706

M
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707 708 709 710 711 712 713 714 715 716 717 718
#
# _TIF_NOTIFY_RESUME or is set, call do_notify_resume
#
io_notify_resume:
	TRACE_IRQS_ON
	stosm	__SF_EMPTY(%r15),0x03	# reenable interrupts
	la	%r2,SP_PTREGS(%r15)	# load pt_regs
	brasl	%r14,do_notify_resume	# call do_notify_resume
	stnsm	__SF_EMPTY(%r15),0xfc	# disable I/O and ext. interrupts
	TRACE_IRQS_OFF
	j	io_work_loop

L
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/*
 * External interrupt handler routine
 */
H
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722
	.globl	ext_int_handler
L
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723 724
ext_int_handler:
	stck	__LC_INT_CLOCK
725
	stpt	__LC_ASYNC_ENTER_TIMER
L
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726
	SAVE_ALL_BASE __LC_SAVE_AREA+32
727
	SAVE_ALL_ASYNC __LC_EXT_OLD_PSW,__LC_SAVE_AREA+32
728
	CREATE_STACK_FRAME __LC_EXT_OLD_PSW,__LC_SAVE_AREA+32
L
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729 730 731 732 733 734 735
	tm	SP_PSW+1(%r15),0x01	# interrupting from user ?
	jz	ext_no_vtime
	UPDATE_VTIME __LC_EXIT_TIMER,__LC_ASYNC_ENTER_TIMER,__LC_USER_TIMER
	UPDATE_VTIME __LC_LAST_UPDATE_TIMER,__LC_EXIT_TIMER,__LC_SYSTEM_TIMER
	mvc	__LC_LAST_UPDATE_TIMER(8),__LC_ASYNC_ENTER_TIMER
ext_no_vtime:
	lg	%r9,__LC_THREAD_INFO	# load pointer to thread_info struct
736
	TRACE_IRQS_OFF
H
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737 738 739
	la	%r2,SP_PTREGS(%r15)	# address of register-save area
	llgh	%r3,__LC_EXT_INT_CODE	# get interruption code
	brasl	%r14,do_extint
L
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	j	io_return

742 743
__critical_end:

L
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744 745 746
/*
 * Machine check handler routines
 */
H
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747
	.globl mcck_int_handler
L
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748
mcck_int_handler:
749
	stck	__LC_INT_CLOCK
750 751
	la	%r1,4095		# revalidate r1
	spt	__LC_CPU_TIMER_SAVE_AREA-4095(%r1)	# revalidate cpu timer
H
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752
	lmg	%r0,%r15,__LC_GPREGS_SAVE_AREA-4095(%r1)# revalidate gprs
L
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753
	SAVE_ALL_BASE __LC_SAVE_AREA+64
754
	la	%r12,__LC_MCK_OLD_PSW
H
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755
	tm	__LC_MCCK_CODE,0x80	# system damage?
756
	jo	mcck_int_main		# yes -> rest of mcck code invalid
757 758 759 760 761 762 763 764 765 766 767 768 769 770 771 772 773
	la	%r14,4095
	mvc	__LC_SAVE_AREA+104(8),__LC_ASYNC_ENTER_TIMER
	mvc	__LC_ASYNC_ENTER_TIMER(8),__LC_CPU_TIMER_SAVE_AREA-4095(%r14)
	tm	__LC_MCCK_CODE+5,0x02	# stored cpu timer value valid?
	jo	1f
	la	%r14,__LC_SYNC_ENTER_TIMER
	clc	0(8,%r14),__LC_ASYNC_ENTER_TIMER
	jl	0f
	la	%r14,__LC_ASYNC_ENTER_TIMER
0:	clc	0(8,%r14),__LC_EXIT_TIMER
	jl	0f
	la	%r14,__LC_EXIT_TIMER
0:	clc	0(8,%r14),__LC_LAST_UPDATE_TIMER
	jl	0f
	la	%r14,__LC_LAST_UPDATE_TIMER
0:	spt	0(%r14)
	mvc	__LC_ASYNC_ENTER_TIMER(8),0(%r14)
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1:	tm	__LC_MCCK_CODE+2,0x09	# mwp + ia of old psw valid?
775
	jno	mcck_int_main		# no -> skip cleanup critical
H
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776
	tm	__LC_MCK_OLD_PSW+1,0x01 # test problem state bit
777 778 779
	jnz	mcck_int_main		# from user -> load kernel stack
	clc	__LC_MCK_OLD_PSW+8(8),BASED(.Lcritical_end)
	jhe	mcck_int_main
H
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780
	clc	__LC_MCK_OLD_PSW+8(8),BASED(.Lcritical_start)
781
	jl	mcck_int_main
H
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782
	brasl	%r14,cleanup_critical
783
mcck_int_main:
H
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784
	lg	%r14,__LC_PANIC_STACK	# are we already on the panic stack?
785 786 787
	slgr	%r14,%r15
	srag	%r14,%r14,PAGE_SHIFT
	jz	0f
H
Heiko Carstens 已提交
788
	lg	%r15,__LC_PANIC_STACK	# load panic stack
789
0:	CREATE_STACK_FRAME __LC_MCK_OLD_PSW,__LC_SAVE_AREA+64
790 791
	tm	__LC_MCCK_CODE+2,0x08	# mwp of old psw valid?
	jno	mcck_no_vtime		# no -> no timer update
792
	tm	SP_PSW+1(%r15),0x01	# interrupting from user ?
793 794 795 796 797
	jz	mcck_no_vtime
	UPDATE_VTIME __LC_EXIT_TIMER,__LC_ASYNC_ENTER_TIMER,__LC_USER_TIMER
	UPDATE_VTIME __LC_LAST_UPDATE_TIMER,__LC_EXIT_TIMER,__LC_SYSTEM_TIMER
	mvc	__LC_LAST_UPDATE_TIMER(8),__LC_ASYNC_ENTER_TIMER
mcck_no_vtime:
798 799 800
	lg	%r9,__LC_THREAD_INFO	# load pointer to thread_info struct
	la	%r2,SP_PTREGS(%r15)	# load pt_regs
	brasl	%r14,s390_do_machine_check
H
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	tm	SP_PSW+1(%r15),0x01	# returning to user ?
802 803 804 805 806 807 808 809 810
	jno	mcck_return
	lg	%r1,__LC_KERNEL_STACK	# switch to kernel stack
	aghi	%r1,-SP_SIZE
	mvc	SP_PTREGS(__PT_SIZE,%r1),SP_PTREGS(%r15)
	xc	__SF_BACKCHAIN(8,%r1),__SF_BACKCHAIN(%r1) # clear back chain
	lgr	%r15,%r1
	stosm	__SF_EMPTY(%r15),0x04	# turn dat on
	tm	__TI_flags+7(%r9),_TIF_MCCK_PENDING
	jno	mcck_return
811
	TRACE_IRQS_OFF
812
	brasl	%r14,s390_handle_mcck
813
	TRACE_IRQS_ON
L
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mcck_return:
815 816 817 818 819 820 821
	mvc	__LC_RETURN_MCCK_PSW(16),SP_PSW(%r15) # move return PSW
	ni	__LC_RETURN_MCCK_PSW+1,0xfd # clear wait state bit
	lmg	%r0,%r15,SP_R0(%r15)	# load gprs 0-15
	mvc	__LC_ASYNC_ENTER_TIMER(8),__LC_SAVE_AREA+104
	tm	__LC_RETURN_MCCK_PSW+1,0x01 # returning to user ?
	jno	0f
	stpt	__LC_EXIT_TIMER
M
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0:	lpswe	__LC_RETURN_MCCK_PSW	# back to caller
L
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/*
 * Restart interruption handler, kick starter for additional CPUs
 */
827
#ifdef CONFIG_SMP
828
	__CPUINIT
H
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	.globl restart_int_handler
L
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restart_int_handler:
H
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	lg	%r15,__LC_SAVE_AREA+120 # load ksp
	lghi	%r10,__LC_CREGS_SAVE_AREA
	lctlg	%c0,%c15,0(%r10) # get new ctl regs
	lghi	%r10,__LC_AREGS_SAVE_AREA
	lam	%a0,%a15,0(%r10)
	lmg	%r6,%r15,__SF_GPRS(%r15) # load registers from clone
	stosm	__SF_EMPTY(%r15),0x04	# now we can turn dat on
	jg	start_secondary
839
	.previous
L
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#else
/*
 * If we do not run with SMP enabled, let the new CPU crash ...
 */
H
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	.globl restart_int_handler
L
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restart_int_handler:
H
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	basr	%r1,0
L
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restart_base:
H
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	lpswe	restart_crash-restart_base(%r1)
	.align 8
L
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restart_crash:
H
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	.long  0x000a0000,0x00000000,0x00000000,0x00000000
L
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restart_go:
#endif

#ifdef CONFIG_CHECK_STACK
/*
 * The synchronous or the asynchronous stack overflowed. We are dead.
 * No need to properly save the registers, we are going to panic anyway.
 * Setup a pt_regs so that show_trace can provide a good call trace.
 */
stack_overflow:
	lg	%r15,__LC_PANIC_STACK	# change to panic stack
863
	aghi	%r15,-SP_SIZE
L
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	mvc	SP_PSW(16,%r15),0(%r12)	# move user PSW to stack
	stmg	%r0,%r11,SP_R0(%r15)	# store gprs %r0-%r11 to kernel stack
	la	%r1,__LC_SAVE_AREA
	chi	%r12,__LC_SVC_OLD_PSW
	je	0f
	chi	%r12,__LC_PGM_OLD_PSW
	je	0f
871
	la	%r1,__LC_SAVE_AREA+32
H
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0:	mvc	SP_R12(32,%r15),0(%r1)	# move %r12-%r15 to stack
873
	mvc	SP_ARGS(8,%r15),__LC_LAST_BREAK
H
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	xc	__SF_BACKCHAIN(8,%r15),__SF_BACKCHAIN(%r15) # clear back chain
	la	%r2,SP_PTREGS(%r15)	# load pt_regs
L
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	jg	kernel_stack_overflow
#endif

cleanup_table_system_call:
	.quad	system_call, sysc_do_svc
cleanup_table_sysc_return:
	.quad	sysc_return, sysc_leave
cleanup_table_sysc_leave:
884
	.quad	sysc_leave, sysc_done
L
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cleanup_table_sysc_work_loop:
886
	.quad	sysc_work_loop, sysc_work_done
887 888
cleanup_table_io_return:
	.quad	io_return, io_leave
889 890 891
cleanup_table_io_leave:
	.quad	io_leave, io_done
cleanup_table_io_work_loop:
892
	.quad	io_work_loop, io_work_done
L
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cleanup_critical:
	clc	8(8,%r12),BASED(cleanup_table_system_call)
	jl	0f
	clc	8(8,%r12),BASED(cleanup_table_system_call+8)
	jl	cleanup_system_call
0:
	clc	8(8,%r12),BASED(cleanup_table_sysc_return)
	jl	0f
	clc	8(8,%r12),BASED(cleanup_table_sysc_return+8)
	jl	cleanup_sysc_return
0:
	clc	8(8,%r12),BASED(cleanup_table_sysc_leave)
	jl	0f
	clc	8(8,%r12),BASED(cleanup_table_sysc_leave+8)
	jl	cleanup_sysc_leave
0:
	clc	8(8,%r12),BASED(cleanup_table_sysc_work_loop)
	jl	0f
	clc	8(8,%r12),BASED(cleanup_table_sysc_work_loop+8)
913
	jl	cleanup_sysc_return
914 915 916 917 918
0:
	clc	8(8,%r12),BASED(cleanup_table_io_return)
	jl	0f
	clc	8(8,%r12),BASED(cleanup_table_io_return+8)
	jl	cleanup_io_return
919 920 921 922 923 924 925 926 927 928
0:
	clc	8(8,%r12),BASED(cleanup_table_io_leave)
	jl	0f
	clc	8(8,%r12),BASED(cleanup_table_io_leave+8)
	jl	cleanup_io_leave
0:
	clc	8(8,%r12),BASED(cleanup_table_io_work_loop)
	jl	0f
	clc	8(8,%r12),BASED(cleanup_table_io_work_loop+8)
	jl	cleanup_io_return
L
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0:
	br	%r14

cleanup_system_call:
	mvc	__LC_RETURN_PSW(16),0(%r12)
934 935 936 937 938 939
	cghi	%r12,__LC_MCK_OLD_PSW
	je	0f
	la	%r12,__LC_SAVE_AREA+32
	j	1f
0:	la	%r12,__LC_SAVE_AREA+64
1:
L
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	clc	__LC_RETURN_PSW+8(8),BASED(cleanup_system_call_insn+8)
	jh	0f
	mvc	__LC_SYNC_ENTER_TIMER(8),__LC_ASYNC_ENTER_TIMER
0:	clc	__LC_RETURN_PSW+8(8),BASED(cleanup_system_call_insn+16)
	jhe	cleanup_vtime
	clc	__LC_RETURN_PSW+8(8),BASED(cleanup_system_call_insn)
	jh	0f
947 948 949
	mvc	__LC_SAVE_AREA(32),0(%r12)
0:	stg	%r13,8(%r12)
	stg	%r12,__LC_SAVE_AREA+96	# argh
950
	SAVE_ALL_SYNC __LC_SVC_OLD_PSW,__LC_SAVE_AREA
951
	CREATE_STACK_FRAME __LC_SVC_OLD_PSW,__LC_SAVE_AREA
952 953
	lg	%r12,__LC_SAVE_AREA+96	# argh
	stg	%r15,24(%r12)
L
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	llgh	%r7,__LC_SVC_INT_CODE
cleanup_vtime:
	clc	__LC_RETURN_PSW+8(8),BASED(cleanup_system_call_insn+24)
	jhe	cleanup_stime
	UPDATE_VTIME __LC_EXIT_TIMER,__LC_SYNC_ENTER_TIMER,__LC_USER_TIMER
cleanup_stime:
	clc	__LC_RETURN_PSW+8(8),BASED(cleanup_system_call_insn+32)
	jh	cleanup_update
	UPDATE_VTIME __LC_LAST_UPDATE_TIMER,__LC_EXIT_TIMER,__LC_SYSTEM_TIMER
cleanup_update:
	mvc	__LC_LAST_UPDATE_TIMER(8),__LC_SYNC_ENTER_TIMER
	mvc	__LC_RETURN_PSW+8(8),BASED(cleanup_table_system_call+8)
	la	%r12,__LC_RETURN_PSW
	br	%r14
cleanup_system_call_insn:
	.quad	sysc_saveall
H
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	.quad	system_call
	.quad	sysc_vtime
	.quad	sysc_stime
	.quad	sysc_update
L
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cleanup_sysc_return:
	mvc	__LC_RETURN_PSW(8),0(%r12)
	mvc	__LC_RETURN_PSW+8(8),BASED(cleanup_table_sysc_return)
	la	%r12,__LC_RETURN_PSW
	br	%r14

cleanup_sysc_leave:
	clc	8(8,%r12),BASED(cleanup_sysc_leave_insn)
983
	je	2f
L
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	mvc	__LC_EXIT_TIMER(8),__LC_ASYNC_ENTER_TIMER
	clc	8(8,%r12),BASED(cleanup_sysc_leave_insn+8)
986
	je	2f
L
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	mvc	__LC_RETURN_PSW(16),SP_PSW(%r15)
988 989 990 991 992 993
	cghi	%r12,__LC_MCK_OLD_PSW
	jne	0f
	mvc	__LC_SAVE_AREA+64(32),SP_R12(%r15)
	j	1f
0:	mvc	__LC_SAVE_AREA+32(32),SP_R12(%r15)
1:	lmg	%r0,%r11,SP_R0(%r15)
L
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	lg	%r15,SP_R15(%r15)
995
2:	la	%r12,__LC_RETURN_PSW
L
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	br	%r14
cleanup_sysc_leave_insn:
998 999
	.quad	sysc_done - 4
	.quad	sysc_done - 8
L
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1001 1002 1003 1004 1005 1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022 1023
cleanup_io_return:
	mvc	__LC_RETURN_PSW(8),0(%r12)
	mvc	__LC_RETURN_PSW+8(8),BASED(cleanup_table_io_work_loop)
	la	%r12,__LC_RETURN_PSW
	br	%r14

cleanup_io_leave:
	clc	8(8,%r12),BASED(cleanup_io_leave_insn)
	je	2f
	mvc	__LC_EXIT_TIMER(8),__LC_ASYNC_ENTER_TIMER
	clc	8(8,%r12),BASED(cleanup_io_leave_insn+8)
	je	2f
	mvc	__LC_RETURN_PSW(16),SP_PSW(%r15)
	cghi	%r12,__LC_MCK_OLD_PSW
	jne	0f
	mvc	__LC_SAVE_AREA+64(32),SP_R12(%r15)
	j	1f
0:	mvc	__LC_SAVE_AREA+32(32),SP_R12(%r15)
1:	lmg	%r0,%r11,SP_R0(%r15)
	lg	%r15,SP_R15(%r15)
2:	la	%r12,__LC_RETURN_PSW
	br	%r14
cleanup_io_leave_insn:
1024 1025
	.quad	io_done - 4
	.quad	io_done - 8
1026

L
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/*
 * Integer constants
 */
H
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1030
		.align	4
L
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1031
.Lconst:
H
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.Lnr_syscalls:	.long	NR_syscalls
.L0x0130:	.short	0x130
.L0x0140:	.short	0x140
.L0x0150:	.short	0x150
.L0x0160:	.short	0x160
.L0x0170:	.short	0x170
L
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1038
.Lcritical_start:
H
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1039
		.quad	__critical_start
L
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1040
.Lcritical_end:
H
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1041
		.quad	__critical_end
L
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1042

H
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1043
		.section .rodata, "a"
L
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#define SYSCALL(esa,esame,emu)	.long esame
sys_call_table:
#include "syscalls.S"
#undef SYSCALL

1049
#ifdef CONFIG_COMPAT
L
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#define SYSCALL(esa,esame,emu)	.long emu
sys_call_table_emu:
#include "syscalls.S"
#undef SYSCALL
#endif